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Calysta Energy engineering organisms to convert methane to low-cost liquid hydrocarbons; BioGTL process

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Calysta is using its proprietary BioGTL biological gas-to-liquids platform to convert natural gas to liquid hydrocarbons. Start-up Calysta Energy plans to use methane as a feedstock for engineered organisms to produce liquid hydrocarbon fuels and high value chemicals that are cost-effective, scalable and reduce environmental impact.

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Raven SR & Hyzon Motors to build up to 100 waste-to-hydrogen hubs

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At the hubs, which can be built at or near landfills, Raven SR will convert mixed and multiple organic wastes, including municipal solid waste, greenwaste, food waste, medical, paper, etc. One hundred hydrogen hubs could convert over 5,000 tons of waste per day and power over 10,000 trucks.

Waste 459
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EU research project IDEALFUEL seeks to develop marine low-sulfur heavy fuel oils from biomass; Bio-HFO

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The IDEALFUEL project aims to create sustainable alternatives by developing new efficient and low-cost methods to produce low-sulfur heavy fuel oils from wood-based non-food biomass. Although cleaner fuels are available, many companies opt for HFOs due to their low cost.

Mariner 273
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DOE to award $35M for bioenergy feedstock and algae R&D

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DE-FOA-0002423 ) Topic Areas ins the FOA support DOE’s Bioenergy Technologies Office’s (BETO’s) objectives to reduce the minimum selling price of drop-in biofuels, lower the cost of biopower, and enable high-value products from biomass or waste resources.

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SK invests in Fulcrum BioEnergy to accelerate production of low-carbon fuel from waste

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Fulcrum produce biofuel on a commercial scale by chemically converting municipal solid waste (MSW) into transportation fuels. Fulcrum’s process combines gasification technology with a Fischer-Tropsch (FT) fuel process for the efficient, low-cost production of renewable transportation fuels. Founded in Pleasanton, Calif.,

Waste 243
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ARPA-E awarding $30M to 12 hybrid solar projects; conversion and storage

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Under the FOCUS program, projects will develop advanced solar converters that turn sunlight into electricity for immediate use, while also producing heat that can be stored at low cost for later use as well as innovative storage systems that accept both heat and electricity from variable solar sources. Lead organization.

Solar 300
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Researchers engineer enzyme surfaces to bind less to lignin; potential cost reduction for cellulosic ethanol production

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Researchers at Rutgers University-New Brunswick and Michigan State University have devised a way to reduce the amount of enzymes needed to convert biomass into biofuels by designing and genetically engineering enzyme surfaces so they bind less to the lignin in biomass. This potentially could reduce enzyme costs in biofuels production.

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